CRISPR/Cas Genome Editing and Precision Plant Breeding in Agriculture

Редактирование генома CRISPR/Cas и точная селекция растений в сельском хозяйстве
Caixia Gao, Yanpeng Wang, Kunling Chen, Huawei Zhang, Rui Zhang
2019-03-05

CRISPR/Cas genome editingCRISPR/Cas9 and variantsDNA-free delivery methodsbase editingprecision plant breeding
Enhanced agricultural production through innovative breeding technology is urgently needed to increase access to nutritious foods worldwide. Recent advances in CRISPR/Cas genome editing enable efficient targeted modification in most crops, thus promising to accelerate crop improvement. Here, we review advances in CRISPR/Cas9 and its variants and examine their applications in plant genome editing and related manipulations. We highlight base-editing tools that enable targeted nucleotide substitutions and describe the various delivery systems, particularly DNA-free methods, that have linked genome editing with crop breeding. We summarize the applications of genome editing for trait improvement, development of techniques for fine-tuning gene regulation, strategies for breeding virus resistance, and the use of high-throughput mutant libraries. We outline future perspectives for genome editing in plant synthetic biology and domestication, advances in delivery systems, editing specificity, homology-directed repair, and gene drives. Finally, we discuss the challenges and opportunities for precision plant breeding and its bright future in agriculture.
1
Base-editing tools allow targeted nucleotide substitutions, expanding precise editing capabilities beyond Cas9-induced cuts.
2
CRISPR/Cas genome editing enables efficient targeted modification in most crops, promising to accelerate crop improvement.
3
DNA-free delivery systems have linked genome editing with crop breeding by facilitating edits without integrating foreign DNA.
4
Future priorities include advances in delivery systems, editing specificity, homology-directed repair, gene drives, and applications in plant synthetic biology and domestication.
5
Genome editing has been applied to trait improvement, fine-tuning gene regulation, breeding virus resistance, and creating high-throughput mutant libraries.

CRISPR/Cas genome editing applications in crop plants

Use of CRISPR/Cas tools and delivery methods (including base editors and DNA-free systems) for precision plant breeding: targeted trait improvement, gene regulation fine-tuning, virus-resistance breeding, high-throughput mutant libraries, editing specificity, homology-directed repair, and gene-drive applications

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2019-03-05
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Caixia Gao
Yanpeng Wang
Kunling Chen
Huawei Zhang
Rui Zhang
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